Sponsored By Oxley Developments
www.oxleygroup.com
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10 Feb 26. Velo3D, Inc. (NASDAQ: VELO), a leading additive manufacturing technology company for mission-critical metal parts, today announced it has been selected as the first qualified additive manufacturing (AM) vendor to support the U.S. Army’s Ground Vehicle Systems Center’s (GVSC) campaign of accelerating qualified AM solutions throughout the Defense Industrial Base. This announcement was made during the Military Additive Manufacturing Summit (MILAM) on February 3, 2026 in Tampa, Florida. Under the Company’s previously announced Cooperative Research & Development Agreement (CRADA) with the U.S. Army DEVCOM GVSC, Velo3D is partnering with GVSC to rapidly develop and validate additively manufactured complex parts and assemblies, addressing critical supply chain challenges affecting ground combat vehicles and other military systems. Velo3D met all GVSC qualification criteria in less than two weeks to earn selection as the first qualified vendor under this program. In partnership, the U.S. Army GVSC and Velo3D will validate the critical components on Velo3D’s Sapphire family of standard and large-format advanced metal AM printers in both Aluminum CP1 and Inconel 718. Upon successful completion, the Velo3D AM alternatives will be available to the U.S. Army Tank and Automotive Command (TACOM) for insertion into the Army supply chain to help relieve current sustainment bottle necks.
“Accelerating AM solutions is a critical effort for the Army and GVSC,” said Mr. Brandon Pender, Associate Director, GVSC Materials Engineering. “Velo3D has the advanced AM technology we need within industry and the robust process, quality and material data available required to support our accelerated qualification process. We are excited to replicate this process with other industrial base partners and appreciative of Velo3D’s close cooperation that enabled us to rapidly validate this concept.”
“Velo3D is humbly honored to support the U.S. Army and be the first of an important cohort of industrial base partners facilitating GVSC’s rapid advancement of sustainment technologies at the speed of war – soldiers should expect nothing less from a company like ours,” said Dr. Arun Jeldi, CEO of Velo3D. “Our Rapid Production Solution is a proven solution the Department of War and the broader national security community increasingly rely on to accelerate the delivery of critical advanced technologies.”
All Velo3D Sapphire® printers are assembled in the United States and capable of printing parts up to 600mm in diameter and one meter in height, with repeatably across the entire fleet . This advancement significantly expands addressable applications by enabling larger part production, while delivering the many benefits of LPBF technology, including higher fidelity printing and Velo3D’s best-in-class, layer-by-layer in-situ process monitoring.
Velo3D’s systems meet DoW cybersecurity standards and can connect securely to military networks, ensuring integrity and security for critical manufacturing operations.
About the U.S. Army DEVCOM Ground Vehicle System Center:
The U.S. Army Combat Capabilities Development Command (DEVCOM) Ground Vehicle Systems Center (GVSC), based at the Detroit Arsenal in Michigan, is the Army’s primary R&D organization for ground vehicle technology, electrification, survivability and advanced manufacturing. GVSC develops and integrates next-generation capabilities across the full vehicle lifecycle—from design and prototyping to sustainment and modernization. Its mission is to deliver and sustain overmatch in ground mobility and protection through innovation in areas such as robotics, modeling and simulation, and additive manufacturing. For more information, visit https://gvsc.devcom.army.mil/
About Velo3D:
Velo3D is a metal 3D printing technology company. 3D printing – also known as additive manufacturing (AM) – has a unique ability to improve the way high-value metal parts are built. However, legacy metal AM has been greatly limited in its capabilities since its invention almost 30 years ago. This has prevented the technology from being used to create the most valuable and impactful parts, restricting its use to specific niches where the limitations were acceptable.
Velo3D has overcome these limitations so engineers can design and print the parts they want. The company’s solution unlocks a wide breadth of design freedom and enables customers in space exploration, aviation, power generation, energy, and semiconductor to innovate the future in their respective industries. Using Velo3D, these customers can now build mission-critical metal parts that were previously impossible to manufacture. The fully integrated solution includes the Flow print preparation software, the Sapphire® family of printers, and the Assure quality control system – all of which are powered by Velo3D’s Intelligent Fusion® manufacturing process. The company delivered its first Sapphire system in 2018 and has been a strategic partner to innovators such as Honeywell, Honda, Chromalloy, and Lam Research. Velo3D has been named as one of Fast Company’s Most Innovative Companies for 2024. For more information, please visit Velo3D.com, or follow the company on LinkedIn or X. (Source: PR Newswire)
10 Feb 26. Boeing Demonstrates iPhone Control of Micro Air Vehicle via Internet. Boeing just released this video of engineer George Windsor in a small room at a Boeing building in Seattle using an iPhone to control a small UAS that was hovering over a baseball field on the Massachusetts Institute of Technology campus in Cambridge, Massachusetts – some 3,000 miles away. Students at MIT’s Humans and Automation Lab and researchers at Boeing Research & Technology, Boeing’s advanced, central R&D unit, are working to prove that a smart phone can be used to quickly and safely fly miniature unmanned aircraft. With support from Boeing, the MIT students have designed a prototype, easy-to-use application for would-be UAS pilots who have smart phones with wireless or cell-phone connection capability. Named Micro Aerial Vehicle Visualization of Unexplored Environments, or MAV-VUE, the project is but a part of Boeing’s overall advanced R&D effort to assimilate new ideas and innovative processes that can benefit customers. In this case, the company is working with industry and university partners such as MIT to find and develop better, simpler ways for people to control UAS. These applications could allow UAS to be used more effectively for tasks that are dirty or dangerous, as well as for missions that may be too long and tedious to have a human be continuously at the controls.
“Imagine a soldier pulling a small, lightweight UAS out of a backpack, and then controlling it – without having to micromanage the flight behaviours of the vehicle – to see around an otherwise inaccessible spot on the battlefield,” said Joshua Downs, a human factors specialist with Boeing Research & Technology and the Boeing technical leader of the MAV-VUE project. “Or a firefighter seeking a better way to gauge how quickly a forest fire is spreading, or a rescue worker trying to more quickly find and help victims of tornadoes, earthquakes and other natural disasters. It is applications such as this that are helping to move the technology forward.
“I’ve really enjoyed being part of this research project with MIT,” Downs added. “It’s an excellent example of how Boeing is collaborating with people at top universities throughout the world, and it’s been a lot of fun, too.”
“Boeing has been a great company to work with because Boeing understands the need to do cutting-edge research,” said Missy Cummings, director of MIT’s Humans and Automation Lab. “The people at Boeing have been great at helping us frame the problem and prove the technology so that we can eventually transition it back to Boeing so that they can use it in the real world.” (Source: UAS VISION)
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Oxley Group Ltd
Oxley offer a range of Military Marine NVG friendly LED lighting that includes navigation lights and controls, flight deck landing lights and interior compartment lighting. Our lighting products are used by Navies around the world including our own Royal Navy on UK Aircraft Carriers, Canadian Frigates, Swedish Submarines, Australian Surface vessels and Submarines, on board French Naval Carriers and in Naval Gun Turrets.
https://oxleydevelopments.cmail20.com/t/t-l-cdhkulk-yujhutkljd-r/
The technology is extremely energy efficient and built robustly, with proven long life. The lighting is NVG friendly, dimmable and programmable to allow for operations with aircraft pilots using military night vision goggles. They offer superior design giving high reliability for the most demanding environments with high sealing and the ability to meet the most stringent EMC standards.
https://oxleydevelopments.cmail20.com/t/t-l-cdhkulk-yujhutkljd-y/
Oxley are proud to say that we are working in partnership with SeaKing to enable a control panel to be offered with our LED Navigation Lighting. All of Oxley navigation lights have been specifically developed for vessels over 50 metres.
Contact Marcus Goad on 07850 917 263 for more information or to arrange samples.
Oxley specialises in the design and manufacture of advanced electronic and electro-optic components and systems for air, land and sea applications within the military sector. Established in 1942, Oxley has manufacturing facilities in the UK and USA and enjoys representation worldwide. The company’s products include night vision and LED lighting, data capture systems and electronic components. Oxley has pioneered the development of night vision compatible lighting. It offers a total package incorporating optical filters, equipment modification, cockpit and external lighting along with fleet wide upgrade services including engineering, installation, support, maintenance and training. The company’s long experience of manufacturing night vision lighting and LED indicators, coupled with advances in LED technology, has enabled it to develop LED solutions to replace incandescent and fluorescent lighting in existing applications as well as becoming the lighting option of choice in new applications such as portable military hospitals, UAV control stations and communication shelters.
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